$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

[해외논문] Side-Chain Engineering of Nonfullerene Acceptors for Near-Infrared Organic Photodetectors and Photovoltaics

ACS energy letters, v.4, 2019년, pp.1401 - 1409  

Lee, Jaewon (Center for Polymers and Organic Solids, Department of Chemistry and Biochemistry , University of California at Santa Barbara , Santa Barbara , California 93106 , United States) ,  Ko, Seo-Jin (Division of Advanced Materials , Korea Research Institute of Chemical Technology (KRICT) , Daejeon 34114 , Republic of Korea) ,  Lee, Hansol (Center for Advanced Soft Electronics, Department of Chemical Engineering , Pohang University of Science and Technology , Pohang 37673 , Republic of Korea) ,  Huang, Jianfei (Center for Polymers and Organic Solids, Department of Chemistry and Biochemistry , University of California at Santa Barbara , Santa Barbara , California 93106 , United States) ,  Zhu, Ziyue (Center for Polymers and Organic Solids, Department of Chemistry and Biochemistry , University of California at Santa Barbara , Santa Barbara , California 93106 , United States) ,  Seifrid, Martin (Cente) ,  Vollbrecht, Joachim ,  Brus, Viktor V. ,  Karki, Akchheta ,  Wang, Hengbin ,  Cho, Kilwon ,  Nguyen, Thuc-Quyen ,  Bazan, Guillermo C.

Abstract AI-Helper 아이콘AI-Helper

Narrow bandgap n-type molecular semiconductors are relevant as key materials components for the fabrication near-infrared organic solar cells (OSCs) and organic photodetectors (OPDs). We thus designed nearly isostructural nonfullerene electron acceptors, except for the choice of solubilizing units, ...

참고문헌 (58)

  1. Green, Martin A.. Commercial progress and challenges for photovoltaics. Nature energy, vol.1, 15015-.

  2. Arias, Ana Claudia. Materials and Applications for Large Area Electronics: Solution-Based Approaches. Chemical reviews, vol.110, no.1, 3-24.

  3. Dong, Huanli, Zhu, Hongfei, Meng, Qing, Gong, Xiong, Hu, Wenping. Organic photoresponse materials and devices. Chemical Society reviews, vol.41, no.5, 1754-1808.

  4. Ying, Lei, Huang, Fei, Bazan, Guillermo C.. Regioregular narrow-bandgap-conjugated polymers for plastic electronics. Nature communications, vol.8, 14047-.

  5. Cheng, Yen-Ju, Yang, Sheng-Hsiung, Hsu, Chain-Shu. Synthesis of Conjugated Polymers for Organic Solar Cell Applications. Chemical reviews, vol.109, no.11, 5868-5923.

  6. Dou, Letian, Liu, Yongsheng, Hong, Ziruo, Li, Gang, Yang, Yang. Low-Bandgap Near-IR Conjugated Polymers/Molecules for Organic Electronics. Chemical reviews, vol.115, no.23, 12633-12665.

  7. Cui, Qiuhong, Bazan, Guillermo C.. Narrow Band Gap Conjugated Polyelectrolytes. Accounts of chemical research, vol.51, no.1, 202-211.

  8. Traverse, Christopher J., Pandey, Richa, Barr, Miles C., Lunt, Richard R.. Emergence of highly transparent photovoltaics for distributed applications. Nature energy, vol.2, no.11, 849-860.

  9. Tai, Qidong, Yan, Feng. Emerging Semitransparent Solar Cells: Materials and Device Design. Advanced materials, vol.29, no.34, 1700192-.

  10. Emmott, Christopher J. M., Röhr, Jason A., Campoy-Quiles, Mariano, Kirchartz, Thomas, Urbina, Antonio, Ekins-Daukes, Nicholas J., Nelson, Jenny. Organic photovoltaic greenhouses: a unique application for semi-transparent PV?. Energy & environmental science, vol.8, no.4, 1317-1328.

  11. García de Arquer, F. Pelayo, Armin, Ardalan, Meredith, Paul, Sargent, Edward H.. Solution-processed semiconductors for next-generation photodetectors. Nature reviews. Materials, vol.2, no.3, 16100-.

  12. Wu, Zhenghui, Zhai, Yichen, Kim, Hyonwoong, Azoulay, Jason D., Ng, Tse Nga. Emerging Design and Characterization Guidelines for Polymer-Based Infrared Photodetectors. Accounts of chemical research, vol.51, no.12, 3144-3153.

  13. Liu, Xiaodong, Lin, Yiwei, Liao, Yingjie, Wu, Jiazun, Zheng, Yonghao. Recent advances in organic near-infrared photodiodes. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.6, no.14, 3499-3513.

  14. Yu, G., Gao, J., Hummelen, J. C., Wudl, F., Heeger, A. J.. Polymer Photovoltaic Cells: Enhanced Efficiencies via a Network of Internal Donor-Acceptor Heterojunctions. Science, vol.270, no.5243, 1789-1791.

  15. Huang, Ye, Kramer, Edward J., Heeger, Alan J., Bazan, Guillermo C.. Bulk Heterojunction Solar Cells: Morphology and Performance Relationships. Chemical reviews, vol.114, no.14, 7006-7043.

  16. Lee, Hansol, Park, Chaneui, Sin, Dong Hun, Park, Jong Hwan, Cho, Kilwon. Recent Advances in Morphology Optimization for Organic Photovoltaics. Advanced materials, vol.30, no.34, 1800453-.

  17. Yao, Zhaoyang, Liao, Xunfan, Gao, Ke, Lin, Francis, Xu, Xiaobao, Shi, Xueliang, Zuo, Lijian, Liu, Feng, Chen, Yiwang, Jen, Alex K.-Y.. Dithienopicenocarbazole-Based Acceptors for Efficient Organic Solar Cells with Optoelectronic Response Over 1000 nm and an Extremely Low Energy Loss. Journal of the American Chemical Society, vol.140, no.6, 2054-2057.

  18. Lee, Jaewon, Ko, Seo‐Jin, Seifrid, Martin, Lee, Hansol, McDowell, Caitlin, Luginbuhl, Benjamin R., Karki, Akchheta, Cho, Kilwon, Nguyen, Thuc‐Quyen, Bazan, Guillermo C.. Design of Nonfullerene Acceptors with Near‐Infrared Light Absorption Capabilities. Advanced energy materials, vol.8, no.26, 1801209-.

  19. Yao, Huifeng, Cui, Yong, Yu, Runnan, Gao, Bowei, Zhang, Hao, Hou, Jianhui. Design, Synthesis, and Photovoltaic Characterization of a Small Molecular Acceptor with an Ultra‐Narrow Band Gap. Angewandte Chemie. international edition, vol.56, no.11, 3045-3049.

  20. Wang, Wei, Yan, Cenqi, Lau, Tsz‐Ki, Wang, Jiayu, Liu, Kuan, Fan, Yan, Lu, Xinhui, Zhan, Xiaowei. Fused Hexacyclic Nonfullerene Acceptor with Strong Near‐Infrared Absorption for Semitransparent Organic Solar Cells with 9.77% Efficiency. Advanced materials, vol.29, no.31, 1701308-.

  21. Xiao, Zuo, Jia, Xue, Li, Dan, Wang, Shizhe, Geng, Xinjian, Liu, Feng, Chen, Junwu, Yang, Shangfeng, Russell, Thomas P., Ding, Liming. 26 mA cm−2 Jsc from organic solar cells with a low-bandgap nonfullerene acceptor. Science bulletin = 科學通報 (英文版), vol.62, no.22, 1494-1496.

  22. Lee, Jaewon, Ko, Seo‐Jin, Seifrid, Martin, Lee, Hansol, Luginbuhl, Benjamin R., Karki, Akchheta, Ford, Michael, Rosenthal, Katie, Cho, Kilwon, Nguyen, Thuc‐Quyen, Bazan, Guillermo C.. Bandgap Narrowing in Non‐Fullerene Acceptors: Single Atom Substitution Leads to High Optoelectronic Response Beyond 1000 nm. Advanced energy materials, vol.8, no.24, 1801212-.

  23. Li, Yongxi, Lin, Jiu-Dong, Che, Xiaozhou, Qu, Yue, Liu, Feng, Liao, Liang-Sheng, Forrest, Stephen R.. High Efficiency Near-Infrared and Semitransparent Non-Fullerene Acceptor Organic Photovoltaic Cells. Journal of the American Chemical Society, vol.139, no.47, 17114-17119.

  24. Yuan, Jun, Zhang, Yunqiang, Zhou, Liuyang, Zhang, Guichuan, Yip, Hin-Lap, Lau, Tsz-Ki, Lu, Xinhui, Zhu, Can, Peng, Hongjian, Johnson, Paul A., Leclerc, Mario, Cao, Yong, Ulanski, Jacek, Li, Yongfang, Zou, Yingping. Single-Junction Organic Solar Cell with over 15% Efficiency Using Fused-Ring Acceptor with Electron-Deficient Core. Joule, vol.3, no.4, 1140-1151.

  25. Wang, Weiping, Zhao, Baofeng, Cong, Zhiyuan, Xie, Yuan, Wu, Haimei, Liang, Quanbin, Liu, Sha, Liu, Feng, Gao, Chao, Wu, Hongbin, Cao, Yong. Nonfullerene Polymer Solar Cells Based on a Main-Chain Twisted Low-Bandgap Acceptor with Power Conversion Efficiency of 13.2%. ACS energy letters, vol.3, 1499-1507.

  26. Gao, Wei, Zhang, Miao, Liu, Tao, Ming, Ruijie, An, Qiaoshi, Wu, Kailong, Xie, Dongjun, Luo, Zhenghui, Zhong, Cheng, Liu, Feng, Zhang, Fujun, Yan, He, Yang, Chuluo. Asymmetrical Ladder‐Type Donor‐Induced Polar Small Molecule Acceptor to Promote Fill Factors Approaching 77% for High‐Performance Nonfullerene Polymer Solar Cells. Advanced materials, vol.30, no.26, 1800052-.

  27. Zhang, Guangye, Zhao, Jingbo, Chow, Philip C. Y., Jiang, Kui, Zhang, Jianquan, Zhu, Zonglong, Zhang, Jie, Huang, Fei, Yan, He. Nonfullerene Acceptor Molecules for Bulk Heterojunction Organic Solar Cells. Chemical reviews, vol.118, no.7, 3447-3507.

  28. Nielsen, Christian B., Holliday, Sarah, Chen, Hung-Yang, Cryer, Samuel J., McCulloch, Iain. Non-Fullerene Electron Acceptors for Use in Organic Solar Cells. Accounts of chemical research, vol.48, no.11, 2803-2812.

  29. Hou, Jianhui, Inganäs, Olle, Friend, Richard H., Gao, Feng. Organic solar cells based on non-fullerene acceptors. Nature materials, vol.17, no.2, 119-128.

  30. Cheng, Pei, Li, Gang, Zhan, Xiaowei, Yang, Yang. Next-generation organic photovoltaics based on non-fullerene acceptors. Nature photonics, vol.12, no.3, 131-142.

  31. Jansen‐van Vuuren, Ross D., Armin, Ardalan, Pandey, Ajay K., Burn, Paul L., Meredith, Paul. Organic Photodiodes: The Future of Full Color Detection and Image Sensing. Advanced materials, vol.28, no.24, 4766-4802.

  32. Baeg, Kang‐Jun, Binda, Maddalena, Natali, Dario, Caironi, Mario, Noh, Yong‐Young. Organic Light Detectors: Photodiodes and Phototransistors. Advanced materials, vol.25, no.31, 4267-4295.

  33. Lee, Jaewon, Kim, Min, Kang, Boseok, Jo, Sae Byeok, Kim, Heung Gyu, Shin, Jisoo, Cho, Kilwon. Side‐Chain Engineering for Fine‐Tuning of Energy Levels and Nanoscale Morphology in Polymer Solar Cells. Advanced energy materials, vol.4, no.10, 1400087-.

  34. Yao, Huifeng, Chen, Yu, Qin, Yunpeng, Yu, Runnan, Cui, Yong, Yang, Bei, Li, Sunsun, Zhang, Kai, Hou, Jianhui. Design and Synthesis of a Low Bandgap Small Molecule Acceptor for Efficient Polymer Solar Cells. Advanced materials, vol.28, no.37, 8283-8287.

  35. Proctor, C.M., Kuik, M., Nguyen, T.Q.. Charge carrier recombination in organic solar cells. Progress in polymer science, vol.38, no.12, 1941-1960.

  36. Koster, L. J. A., Mihailetchi, V. D., Xie, H., Blom, P. W. M.. Origin of the light intensity dependence of the short-circuit current of polymer/fullerene solar cells. Applied physics letters, vol.87, no.20, 203502-.

  37. Schilinsky, Pavel, Waldauf, Christoph, Brabec, Christoph J.. Recombination and loss analysis in polythiophene based bulk heterojunction photodetectors. Applied physics letters, vol.81, no.20, 3885-3887.

  38. Proctor, Christopher M., Kim, Chunki, Neher, Dieter, Nguyen, Thuc‐Quyen. Nongeminate Recombination and Charge Transport Limitations in Diketopyrrolopyrrole‐Based Solution‐Processed Small Molecule Solar Cells. Advanced functional materials, vol.23, no.28, 3584-3594.

  39. Credgington, Dan, Jamieson, Fiona C., Walker, Bright, Nguyen, Thuc‐Quyen, Durrant, James R.. Quantification of Geminate and Non‐Geminate Recombination Losses within a Solution‐Processed Small‐Molecule Bulk Heterojunction Solar Cell. Advanced materials, vol.24, no.16, 2135-2141.

  40. Kyaw, Aung Ko Ko, Wang, Dong Hwan, Luo, Chan, Cao, Yong, Nguyen, Thuc‐Quyen, Bazan, Guillermo C., Heeger, Alan J.. Effects of Solvent Additives on Morphology, Charge Generation, Transport, and Recombination in Solution‐Processed Small‐Molecule Solar Cells. Advanced energy materials, vol.4, no.7, 1301469-.

  41. Gasparini, Nicola, Gregori, Alberto, Salvador, Michael, Biele, Markus, Wadsworth, Andrew, Tedde, Sandro, Baran, Derya, McCulloch, Iain, Brabec, Christoph J.. Visible and Near‐Infrared Imaging with Nonfullerene‐Based Photodetectors. Advanced materials technologies, vol.3, no.7, 1800104-.

  42. Gong, Xiong, Tong, Minghong, Xia, Yangjun, Cai, Wanzhu, Moon, Ji Sun, Cao, Yong, Yu, Gang, Shieh, Chan-Long, Nilsson, Boo, Heeger, Alan J.. High-Detectivity Polymer Photodetectors with Spectral Response from 300 nm to 1450 nm. Science, vol.325, no.5948, 1665-1667.

  43. Han, Jinfeng, Yang, Dezhi, Ma, Dongge, Qiao, Wenqiang, Wang, Zhi Yuan. Low‐Bandgap Polymers for High‐Performance Photodiodes with Maximal EQE near 1200 nm and Broad Spectral Response from 300 to 1700 nm. Advanced optical materials, vol.6, no.15, 1800038-.

  44. Young, Margaret, Suddard‐Bangsund, John, Patrick, Tyler J., Pajares, Natalia, Traverse, Christopher J., Barr, Miles C., Lunt, Sophia Y., Lunt, Richard R.. Organic Heptamethine Salts for Photovoltaics and Detectors with Near‐Infrared Photoresponse up to 1600 nm. Advanced optical materials, vol.4, no.7, 1028-1033.

  45. Yao, Y., Liang, Y., Shrotriya, V., Xiao, S., Yu, L., Yang, Y.. Plastic Near-Infrared Photodetectors Utilizing Low Band Gap Polymer. Advanced materials, vol.19, no.22, 3979-3983.

  46. Choi, Min-Soo, Chae, Sangmin, Kim, Hyo Jung, Kim, Jang-Joo. Control of Crystallinity in PbPc:C60 Blend Film and Application for Inverted Near-Infrared Organic Photodetector. ACS applied materials & interfaces, vol.10, no.30, 25614-25620.

  47. Zhong, Zhiming, Li, Kang, Zhang, Jiaxin, Ying, Lei, Xie, Ruihao, Yu, Gang, Huang, Fei, Cao, Yong. High-Performance All-Polymer Photodetectors via a Thick Photoactive Layer Strategy. ACS applied materials & interfaces, vol.11, no.15, 14208-14214.

  48. Zhong, Zhiming, Bu, Laju, Zhu, Peng, Xiao, Tong, Fan, Baobing, Ying, Lei, Lu, Guanghao, Yu, Gang, Huang, Fei, Cao, Yong. Dark Current Reduction Strategy via a Layer-By-Layer Solution Process for a High-Performance All-Polymer Photodetector. ACS applied materials & interfaces, vol.11, no.8, 8350-8356.

  49. Xu, Xiaofeng, Zhou, Xiaobo, Zhou, Ke, Xia, Yuxin, Ma, Wei, Inganäs, Olle. Large‐Area, Semitransparent, and Flexible All‐Polymer Photodetectors. Advanced functional materials, vol.28, no.48, 1805570-.

  50. Song, Xin, Gasparini, Nicola, Nahid, Masrur Morshed, Chen, Hu, Macphee, Sky Marie, Zhang, Weimin, Norman, Victoria, Zhu, Chenhui, Bryant, Daniel, Ade, Harald, McCulloch, Iain, Baran, Derya. A Highly Crystalline Fused‐Ring n‐Type Small Molecule for Non‐Fullerene Acceptor Based Organic Solar Cells and Field‐Effect Transistors. Advanced functional materials, vol.28, no.35, 1802895-.

  51. Shi, Xueliang, Zuo, Lijian, Jo, Sae Byeok, Gao, Ke, Lin, Francis, Liu, Feng, Jen, Alex K.-Y.. Design of a Highly Crystalline Low-Band Gap Fused-Ring Electron Acceptor for High-Efficiency Solar Cells with Low Energy Loss. Chemistry of materials : a publication of the American Chemical Society, vol.29, no.19, 8369-8376.

  52. Seifrid, Martin T., Oosterhout, Stefan D., Toney, Michael F., Bazan, Guillermo C.. Kinetic Versus Thermodynamic Orientational Preferences for a Series of Isomorphic Molecular Semiconductors. ACS omega, vol.3, no.8, 10198-10204.

  53. Kaake, Loren G., Jasieniak, Jacek J., Bakus II, Ronald C., Welch, Gregory C., Moses, Daniel, Bazan, Guillermo C., Heeger, Alan J.. Photoinduced Charge Generation in a Molecular Bulk Heterojunction Material. Journal of the American Chemical Society, vol.134, no.48, 19828-19838.

  54. Wang, Gang, Eastham, Nicholas D., Aldrich, Thomas J., Ma, Boran, Manley, Eric F., Chen, Zhihua, Chen, Lin X., de la Cruz, Monica Olvera, Chang, Robert P. H., Melkonyan, Ferdinand S., Facchetti, Antonio, Marks, Tobin J.. Photoactive Blend Morphology Engineering through Systematically Tuning Aggregation in All‐Polymer Solar Cells. Advanced energy materials, vol.8, no.12, 1702173-.

  55. Zhou, Zichun, Xu, Shengjie, Song, Jingnan, Jin, Yingzhi, Yue, Qihui, Qian, Yuhao, Liu, Feng, Zhang, Fengling, Zhu, Xiaozhang. High-efficiency small-molecule ternary solar cells with a hierarchical morphology enabled by synergizing fullerene and non-fullerene acceptors. Nature energy, vol.3, no.11, 952-959.

  56. Wan, Shi‐Sheng, Chang, Chunmei, Wang, Jin‐Liang, Yuan, Gui‐Zhou, Wu, Qing, Zhang, Maojie, Li, Yongfang. Effects of the Number of Bromine Substitution on Photovoltaic Efficiency and Energy Loss of Benzo[1,2‐b:4,5‐b′]diselenophene‐based Narrow‐Bandgap Multibrominated Nonfullerene Acceptors. Solar rrl, vol.3, no.1, 1800250-.

  57. Wu, Yue, Yang, Hang, Zou, Yan, Dong, Yingying, Yuan, Jianyu, Cui, Chaohua, Li, Yongfang. A new dialkylthio-substituted naphtho[2,3-c]thiophene-4,9-dione based polymer donor for high-performance polymer solar cells. Energy & environmental science, vol.12, no.2, 675-683.

  58. Zaban, Arie, Greenshtein, Miri, Bisquert, Juan. Determination of the Electron Lifetime in Nanocrystalline Dye Solar Cells by Open‐Circuit Voltage Decay Measurements. Chemphyschem : a European journal of chemical physics and physical chemistry, vol.4, no.8, 859-864.

LOADING...
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로